4.5 Article

Infiltrated photonic crystal cavity as a highly sensitive platform for glucose concentration detection

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OPTICS COMMUNICATIONS
卷 384, 期 -, 页码 93-100

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.optcom.2016.10.019

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Optical biosensor; Photonic crystal; Cavity-coupled waveguide; High sensitivity; Glucose concentration

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A Bio-sensing platform based on an infiltrated photonic crystal ring shaped holes cavity-coupled waveguide system is proposed for glucose concentration detection. Considering silicon-on-insulator (SOI) technology, it has been demonstrated that the ring shaped holes configuration provides an excellent optical confinement within the cavity region, which further enhances the light-matter interactions at the precise location of the analyte medium. Thus, the sensitivity and the quality factor (Q) can be significantly improved. The transmission characteristics of light in the biosensor under different refractive indices that correspond to the change in the analyte glucose concentration are analyzed by performing finite-difference time-domain (FDTD) simulations. Accordingly, an improved sensitivity of 462 nm/RIU and a Q factor as high as 1.11x10(5) have been achieved, resulting in a detection limit of 3.03x10(6) RIU. Such combination of attributes makes the designed structure a promising element for performing label-free biosensing in medical diagnosis and environmental monitoring.

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